IEC 60287-2-2-1995 电缆电流定额的计算 第2部分 热阻 第2节在室外敷防受阳光照射的电缆群的缩减因数的计算方法(英文).pdf
《IEC 60287-2-2-1995 电缆电流定额的计算 第2部分 热阻 第2节在室外敷防受阳光照射的电缆群的缩减因数的计算方法(英文).pdf》由会员分享,可在线阅读,更多相关《IEC 60287-2-2-1995 电缆电流定额的计算 第2部分 热阻 第2节在室外敷防受阳光照射的电缆群的缩减因数的计算方法(英文).pdf(36页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD BS 7769-2-2.1: 1997 IEC 60287-2-1: 1994 Incorporating Amendment No. 1 Electric cables Calculation of the current rating Part 2: Thermal resistance Section 2.1 Calculation of thermal resistance ICS 29.060.20 Licensed Copy: London South Bank University, London South Bank University, T
2、ue Mar 13 14:37:38 GMT+00:00 2007, Uncontrolled Copy, (c) BSIBS 7769-2-2.1:1997 This British Standard, having been prepared under the direction of the Electrotechnical Sector Board, was published under the authority of the Standards Board and comes into effect on 15 February 1997 BSI 24 July 2002 Th
3、e following BSI references relate to the work on this standard: Committee reference GEL/20 Draft announced in BSI Update May 1995 ISBN 0 580 26922 1 Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Committee GEL/20, Electric cables,
4、 upon which the following bodies were represented: Association of Consulting Engineers Association of Manufacturers of Domestic Electrical Appliances BEAMA (Electrical Cable and Conductor Accessory Manufacturers Association) British Approvals Service for Cables British Cable Makers Confederation Bri
5、tish Iron and Steel Producers Association British Plastics Federation Department of Trade and Industry (Consumer Safety Unit, CA division) Electricity Association London Regional Transport The following bodies were also represented in the drafting of the standard, through subcommittees and panels: E
6、RA Technology Ltd. Institution of Incorporated Executive Engineers London Underground Ltd. Amendments issued since publication Amd. No. Date Comments 13665 24 July 2002 See national foreword Licensed Copy: London South Bank University, London South Bank University, Tue Mar 13 14:37:38 GMT+00:00 2007
7、, Uncontrolled Copy, (c) BSIBS 7769-2-2.1:1997 BSI 24 July 2002 i Contents Page Committees responsible Inside front cover National foreword ii Introduction 1 1G e n e r a l 1 1.1 Scope 1 1.2 Symbols 2 2 Calculation of thermal resistances 3 2.1 Thermal resistance of the constituent parts of a cable,
8、T 1 , T 2and T 3 4 2.2 External thermal resistance T 4 9 3 Digital calculation of quantities given graphically 14 3.1 General 16 3.2 Calculation of sby means of a diagram (Figure 8) 19 Figure 1 Diagram showing a group of q cables and their reflection in the ground-air surface 22 Figure 2 Geometric f
9、actor G for two-core belted cables with circular conductors 23 Figure 3 Geometric factor G for three-core belted cables with circular conductors 24 Figure 4 Thermal resistance of three-core screened cables with circular conductors compared to that of a corresponding unscreened cable 25 Figure 5 Ther
10、mal resistance of three-core screened cables with sector-shaped conductors compared with that of a corresponding unscreened cable 26 Figure 6 Geometric factor for obtaining the thermal resistances of the filling material between the sheaths and armour of SL and SA type cables 27 Figure 7 Heat dissip
11、ation coefficient for black surfaces of cables in free air 28 Figure 8 Graph for the calculation of external thermal resistance of cables in air 31 Table 1 Thermal resistivities of materials 20 Table 2 Values for constants Z, E and g for black surfaces of cables in free air 21 Table 3 Absorption coe
12、fficient of solar radiation for cable surfaces 22 Table 4 Values of constants U, V and Y 22 G Licensed Copy: London South Bank University, London South Bank University, Tue Mar 13 14:37:38 GMT+00:00 2007, Uncontrolled Copy, (c) BSIBS 7769-2-2.1:1997 ii BSI 24 July 2002 National foreword This Section
13、 of BS 7769 has been prepared by Technical Committee GEL/20. It is identical with IEC 60287-2-1:1994, Electric cables Calculation of the current rating Part 2: Thermal resistance Section 1: Calculation of thermal resistance, including amendment 1:2001, published by the International Electrotechnical
14、 Commission (IEC). The start and finish of text introduced or altered by amendment is indicated in the text by tags . Tags indicating changes to IEC text carry the number of the IEC amendment. For example, text altered by IEC amendment 1 is indicated by . From 1 January 1997, all IEC publications ha
15、ve the number 60000 added to the old number. For instance, IEC 27-1 has been renumbered as IEC 60027-1. For a period of time during the change over from one numbering system to the other, publications may contain identifiers from both systems. Cross-references The British Standards which implement i
16、nternational or European publications referred to in this document may be found in the BSI Catalogue under the section entitled “International Standards Correspondence Index”, or by using the “Search” facility of the BSI Electronic Catalogue or of British Standards Online. This publication does not
17、purport to include all the necessary provisions of a contract. Users are responsible for its correct application. Compliance with a British Standard does not of itself confer immunity from legal obligations. Summary of pages This document comprises a front cover, an inside front cover, pages i and i
18、i, pages 1 to 31 and a back cover. The BSI copyright notice displayed in this document indicates when the document was last issued. Licensed Copy: London South Bank University, London South Bank University, Tue Mar 13 14:37:38 GMT+00:00 2007, Uncontrolled Copy, (c) BSIBS 7769-2-2.1:1997 BSI 24 July
19、2002 1 Introduction IEC 60287 has been divided into three parts and sections so that revisions of, and additions to, the document can be carried out more conveniently. Each part is divided into sections which are published as separate standards. Part 1: Formulae of ratings and power losses; Part 2:
20、Formulae for thermal resistance; Part 3: Sections on operating conditions. This section of IEC 60287-2 contains methods for calculating the internal thermal resistance of cables and the external thermal resistance for cables laid in free air, ducts and buried. The formulae in this standard contain q
21、uantities which vary with cable design and materials used. The values given in the tables are either internationally agreed, for example, electrical resistivities and resistance temperature coefficients, or are those which are generally accepted in practice, for example, thermal resistivities and pe
22、rmittivities of materials. In this latter category, some of the values given are not characteristic of the quality of new cables but are considered to apply to cables after a long period of use. In order that uniform and comparable results may be obtained, the current ratings should be calculated wi
23、th the values given in this standard. However, where it is known with certainty that other values are more appropriate to the materials and design, then these may be used, and the corresponding current rating declared in addition, provided that the different values are quoted. Quantities related to
24、the operating conditions of cables are liable to vary considerably from one country to another. For instance, with respect to the ambient temperature and soil thermal resistivity, the values are governed in various countries by different considerations. Superficial comparisons between the values use
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